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@ -363,17 +363,64 @@ struct GeluFunctor : public BaseActivationFunctor<T> {
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}
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};
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// gelu_grad(x) = dout * (0.5 * (1 + erf(x / sqrt(2))) + 0.5 * 2 / sqrt(pie) /
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// sqrt(2) * x * exp (-0.5 * sqrt(x)))
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// gelu_grad(x) = dout * (0.5 + 0.5 * erf(x * M_SQRT1_2) + (0.5 * M_2_SQRTPI *
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// M_SQRT1_2) * x * exp (-0.5 * sqrt(x)))
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template <typename T>
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struct GeluGradFunctor : BaseActivationFunctor<T> {
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template <typename Device, typename X, typename Out, typename dOut,
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typename dX>
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void operator()(Device d, X x, Out out, dOut dout, dX dx) const {
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#if defined(PADDLE_WITH_MKLML) && !defined(_WIN32) && !defined(__APPLE__) && \
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!defined(__OSX__) && !defined(PADDLE_WITH_CUDA)
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auto x_data = x.data();
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auto dx_data = dx.data();
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int n = std::min(x.size(), dx.size());
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std::memset(dx_data, 0, n * sizeof(T));
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// First(dx_data) = erf(x * M_SQRT1_2)
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math::CBlas<T>::AXPY(n, static_cast<T>(M_SQRT1_2), x_data, 1, dx_data, 1);
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math::CBlas<T>::VMERF(n, dx_data, dx_data, VML_LA);
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// Second = 0.5 * M_2_SQRTPI * M_SQRT1_2 * x * exp (-0.5 * sqrt(x))
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auto second = static_cast<T*>(std::malloc(n * sizeof(T)));
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std::memset(second, 0, n * sizeof(T));
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math::CBlas<T>::VSQUARE(n, x_data, second);
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for (int i = 0; i < n; i++) {
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second[i] *= static_cast<T>(-0.5);
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}
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math::CBlas<T>::VEXP(n, second, second);
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math::CBlas<T>::VMUL(n, x_data, second, second);
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T tmp = static_cast<T>(0.5) * static_cast<T>(M_SQRT1_2) *
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static_cast<T>(M_2_SQRTPI);
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for (int i = 0; i < n; i++) {
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second[i] *= tmp;
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}
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// Sum = 0.5 * First + Second
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math::CBlas<T>::AXPY(n, static_cast<T>(0.5), dx_data, 1, second, 1);
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// 0.5 + Sum
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for (int i = 0; i < n; i++) {
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second[i] += static_cast<T>(0.5);
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}
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// * dout
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auto dout_data = dout.data();
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math::CBlas<T>::VMUL(n, dout_data, second, dx_data);
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std::free(second);
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#else
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auto first = static_cast<T>(0.5) *
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(static_cast<T>(1) + ((x * static_cast<T>(M_SQRT1_2)).erf()));
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auto second = static_cast<T>(0.5 * M_2_SQRTPI * M_SQRT1_2) * x *
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(-static_cast<T>(0.5) * x.square()).exp();
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dx.device(d) = dout * (first + second);
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#endif
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}
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static constexpr ActBwdOpFwdDeps FwdDeps() { return kDepX; }
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